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[未成熟齿状回作为精神疾病的候选内表型]

[Immature dentate gyrus as a candidate endophenotype of psychiatric disorders].

作者信息

Takao Keizo, Miyakawa Tsuyoshi

机构信息

Center for Genetic Analysis of Behavior, National Institute for Physiological Sciences, 38 Aza-Nishigonaka, Myodaiji-cho, Okazaki, Aichi, 444-8585 Japan.

出版信息

Nihon Shinkei Seishin Yakurigaku Zasshi. 2010 Jun;30(3):115-22.

Abstract

Despite massive research efforts, the exact pathogenesis and pathophysiology of psychiatric disorders, such as schizophrenia and bipolar disorder, remain largely unknown. Animal models can serve as essential tools for investigating the etiology and treatment of such disorders. Some mutant mouse strains were found to exhibit behavioral abnormalities reminiscent of human psychiatric disorders. Here we outline our unique approach of extrapolating findings in mice to humans, and present studies on alpha-CaMKII heterozygous knockout (alpha-CaMKII HKO) mice as examples. Alpha-CaMKII HKO mice have profoundly dysregulated behavior and impaired neuronal development in the dentate gyrus (DG). The behavioral abnormalities include a severe working memory deficit and an exaggerated infradian rhythm, which are similar to symptoms seen in schizophrenia, bipolar mood disorder and other psychiatric disorders. By conducting a series of experiments, we discovered that almost all the neurons in the mutant DG were very similar to the immature DG neurons of normal rodents. In other words, alpha-CaMKII HKO mice have an "immature DG". We proposed that an "immature DG" in adulthood might induce alterations in behavior and serve as a promising candidate endophenotype of schizophrenia and other human psychiatric disorders.

摘要

尽管进行了大量研究,但精神分裂症和双相情感障碍等精神疾病的确切发病机制和病理生理学在很大程度上仍不清楚。动物模型可作为研究此类疾病病因和治疗方法的重要工具。已发现一些突变小鼠品系表现出类似于人类精神疾病的行为异常。在此,我们概述了将小鼠研究结果外推至人类的独特方法,并以α-钙调蛋白依赖性蛋白激酶II杂合敲除(α-CaMKII HKO)小鼠的研究为例进行说明。α-CaMKII HKO小鼠存在行为严重失调以及齿状回(DG)神经元发育受损的情况。行为异常包括严重的工作记忆缺陷和过度的亚日节律,这与精神分裂症、双相情感障碍和其他精神疾病的症状相似。通过进行一系列实验,我们发现突变DG中的几乎所有神经元都与正常啮齿动物未成熟的DG神经元非常相似。换句话说,α-CaMKII HKO小鼠具有“未成熟的DG”。我们提出,成年期的“未成熟DG”可能会导致行为改变,并有望成为精神分裂症和其他人类精神疾病的候选内表型。

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